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    A New Reactor Concept for Efficient Solar Thermochemical Fuel Production

    Source: Journal of Solar Energy Engineering:;2013:;volume( 135 ):;issue: 003::page 31002
    Author:
    Ermanoski, Ivan
    ,
    Siegel, Nathan P.
    ,
    Stechel, Ellen B.
    DOI: 10.1115/1.4023356
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: We describe and analyze the efficiency of a new solarthermochemical reactor concept, which employs a moving packed bed of reactive particles produce of H2 or CO from solar energy and H2O or CO2. The packed bed reactor incorporates several features essential to achieving high efficiency: spatial separation of pressures, temperature, and reaction products in the reactor; solid–solid sensible heat recovery between reaction steps; continuous onsun operation; and direct solar illumination of the working material. Our efficiency analysis includes material thermodynamics and a detailed accounting of energy losses, and demonstrates that vacuum pumping, made possible by the innovative pressure separation approach in our reactor, has a decisive efficiency advantage over inert gas sweeping. We show that in a fully developed system, using CeO2 as a reactive material, the conversion efficiency of solar energy into H2 and CO at the design point can exceed 30%. The reactor operational flexibility makes it suitable for a wide range of operating conditions, allowing for high efficiency on an annual average basis. The mixture of H2 and CO, known as synthesis gas, is not only usable as a fuel but is also a universal starting point for the production of synthetic fuels compatible with the existing energy infrastructure. This would make it possible to replace petroleum derivatives used in transportation in the U.S., by using less than 0.7% of the U.S. land area, a roughly two orders of magnitude improvement over mature biofuel approaches. In addition, the packed bed reactor design is flexible and can be adapted to new, better performing reactive materials.
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      A New Reactor Concept for Efficient Solar Thermochemical Fuel Production

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    http://yetl.yabesh.ir/yetl1/handle/yetl/153161
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    contributor authorErmanoski, Ivan
    contributor authorSiegel, Nathan P.
    contributor authorStechel, Ellen B.
    date accessioned2017-05-09T01:02:36Z
    date available2017-05-09T01:02:36Z
    date issued2013
    identifier issn0199-6231
    identifier othersol_135_3_031002.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/153161
    description abstractWe describe and analyze the efficiency of a new solarthermochemical reactor concept, which employs a moving packed bed of reactive particles produce of H2 or CO from solar energy and H2O or CO2. The packed bed reactor incorporates several features essential to achieving high efficiency: spatial separation of pressures, temperature, and reaction products in the reactor; solid–solid sensible heat recovery between reaction steps; continuous onsun operation; and direct solar illumination of the working material. Our efficiency analysis includes material thermodynamics and a detailed accounting of energy losses, and demonstrates that vacuum pumping, made possible by the innovative pressure separation approach in our reactor, has a decisive efficiency advantage over inert gas sweeping. We show that in a fully developed system, using CeO2 as a reactive material, the conversion efficiency of solar energy into H2 and CO at the design point can exceed 30%. The reactor operational flexibility makes it suitable for a wide range of operating conditions, allowing for high efficiency on an annual average basis. The mixture of H2 and CO, known as synthesis gas, is not only usable as a fuel but is also a universal starting point for the production of synthetic fuels compatible with the existing energy infrastructure. This would make it possible to replace petroleum derivatives used in transportation in the U.S., by using less than 0.7% of the U.S. land area, a roughly two orders of magnitude improvement over mature biofuel approaches. In addition, the packed bed reactor design is flexible and can be adapted to new, better performing reactive materials.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleA New Reactor Concept for Efficient Solar Thermochemical Fuel Production
    typeJournal Paper
    journal volume135
    journal issue3
    journal titleJournal of Solar Energy Engineering
    identifier doi10.1115/1.4023356
    journal fristpage31002
    journal lastpage31002
    identifier eissn1528-8986
    treeJournal of Solar Energy Engineering:;2013:;volume( 135 ):;issue: 003
    contenttypeFulltext
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